CYCMS3, A NOVEL B-TYPE ALFALFA CYCLIN GENE, IS INDUCED IN THE G(0)-TO-G(1) TRANSITION OF THE CELL-CYCLE

被引:54
作者
MESKIENE, I
BOGRE, L
DAHL, M
PIRCK, M
HA, DTC
SWOBODA, I
HEBERLEBORS, E
AMMERER, G
HIRT, H
机构
[1] INST GENET & MICROBIOL, VIENNA BIOCTR, A-1030 VIENNA, AUSTRIA
[2] INST BIOCHEM & MOLEC CELL BIOL, VIENNA BIOCTR, A-1030 VIENNA, AUSTRIA
关键词
D O I
10.1105/tpc.7.6.759
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cyclins are key regulators of the cell cycle in all eukaryotes. We have previously isolated two B-type cyclin genes, cycMs1 and cycMs2, from alfalfa that are primarily expressed during the G(2)-to-M phase transition and are most likely mitotic cyclin genes. Here, we report the isolation of a novel alfalfa cyclin gene, termed cycMs3 (for cyclin Medicago sativa), by selecting for mating type a-pheromone-induced cell cycle arrest suppression in yeast. The central region of the predicted amino acid sequence of the cycMs3 gene is most similar to the cyclin box of yeast B-type and mammalian A- and B-type cyclins. in situ hybridization showed that cycMs3 mRNA can be detected only in proliferating cells and not in differentiated alfalfa cells. When differentiated G(0)-arrested cells were induced to reenter the cell cycle in the G(1) phase and resume cell division by treatment with plant hormones, cycMs3 transcript levels increased long before the onset of DNA synthesis. In contrast, histone H3-1 mRNA and cycMs2 transcripts were not observed before DNA replication and mitosis, respectively. In addition, cycMs3 mRNA was found in all stages of the cell cycle in synchronously dividing cells, whereas the cycMs2 and histone H3-1 genes showed a G(2)-to-M phase- or S phase-specific transcription pattern, respectively. These data suggest that the role of cyclin CycMs3 differs from that of CycMs1 and CycMs2. We propose that CycMs3 helps control reentry of quiescent G(0)-arrested cells into the G(1) phase of the cell cycle.
引用
收藏
页码:759 / 771
页数:13
相关论文
共 48 条
[1]   SYNCHRONY INDUCED BY DOUBLE PHOSPHATE STARVATION IN A SUSPENSION-CULTURE OF CATHARANTHUS-ROSEUS [J].
AMINO, S ;
FUJIMURA, T ;
KOMAMINE, A .
PHYSIOLOGIA PLANTARUM, 1983, 59 (03) :393-396
[2]   MECHANISMS THAT HELP THE YEAST-CELL CYCLE CLOCK TICK - G2 CYCLINS TRANSCRIPTIONALLY ACTIVATE G2 CYCLINS AND REPRESS G1 CYCLINS [J].
AMON, A ;
TYERS, M ;
FUTCHER, B ;
NASMYTH, K .
CELL, 1993, 74 (06) :993-1007
[3]   CLOSING THE CELL-CYCLE CIRCLE IN YEAST - G2 CYCLIN PROTEOLYSIS INITIATED AT MITOSIS PERSISTS UNTIL THE ACTIVATION OF G1 CYCLINS IN THE NEXT CYCLE [J].
AMON, A ;
IRNIGER, S ;
NASMYTH, K .
CELL, 1994, 77 (07) :1037-1050
[4]   CA-2+-DEPENDENT PROTEIN-KINASE FROM ALFALFA (MEDICAGO-VARIA) - PARTIAL-PURIFICATION AND AUTOPHOSPHORYLATION [J].
BOGRE, L ;
OLAH, Z ;
DUDITS, D .
PLANT SCIENCE, 1988, 58 (02) :135-144
[5]  
BOGRE L, 1990, CURR PLANT SCI BIOT, V9, P427
[6]   PROPERTIES OF SACCHAROMYCES-CEREVISIAE WEE1 AND ITS DIFFERENTIAL REGULATION OF P34(CDC28) IN RESPONSE TO G(1) AND G(2) CYCLINS [J].
BOOHER, RN ;
DESHAIES, RJ ;
KIRSCHNER, MW .
EMBO JOURNAL, 1993, 12 (09) :3417-3426
[7]   COMPLEMENTARY FLORAL HOMEOTIC PHENOTYPES RESULT FROM OPPOSITE ORIENTATIONS OF A TRANSPOSON AT THE PLENA-LOCUS OF ANTIRRHINUM [J].
BRADLEY, D ;
CARPENTER, R ;
SOMMER, H ;
HARTLEY, N ;
COEN, E .
CELL, 1993, 72 (01) :85-95
[8]   A FISSION YEAST B-TYPE CYCLIN FUNCTIONING EARLY IN THE CELL-CYCLE [J].
BUENO, A ;
RICHARDSON, H ;
REED, SI ;
RUSSELL, P .
CELL, 1991, 66 (01) :149-159
[9]   A METHOD FOR ISOLATION OF INTACT, TRANSLATIONALLY ACTIVE RIBONUCLEIC-ACID [J].
CATHALA, G ;
SAVOURET, JF ;
MENDEZ, B ;
WEST, BL ;
KARIN, M ;
MARTIAL, JA ;
BAXTER, JD .
DNA-A JOURNAL OF MOLECULAR & CELLULAR BIOLOGY, 1983, 2 (04) :329-335
[10]   INTERACTION BETWEEN THE CIG1 AND CIG2 B-TYPE CYCLINS IN THE FISSION YEAST-CELL CYCLE [J].
CONNOLLY, T ;
BEACH, D .
MOLECULAR AND CELLULAR BIOLOGY, 1994, 14 (01) :768-776